Consider the following system at equilibrium where AH° = -10.4 kJ/mol, and K. = 55.6 , at 698 K. %3D H2 (g) + I2 (g) =2 HI (g) When 0.38 moles of HI (g) are added to the equilibrium system at constant temperature: The value of K. The value of Qc( Kc. The reaction must Orun in the forward direction to restablish equilibrium. Orun in the reverse direction to restablish equilibrium. O remain the same. It is already at equilibrium. The concentration of I2 will Submit Answer Retry Entire Group No more group attempts remain

Chemistry: An Atoms First Approach
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ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
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Chapter12: Chemical Equilibrium
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6.1

Consider the following system at equilibrium where AH° = -10.4 kJ/mol, and K. = 55.6 , at 698 K.
%3D
H2 (g) + I2 (g) =2 HI (g)
When 0.38 moles of HI (g) are added to the equilibrium system at constant temperature:
The value of K.
The value of Qc(
Kc.
The reaction must
Orun in the forward direction to restablish equilibrium.
Orun in the reverse direction to restablish equilibrium.
O remain the same. It is already at equilibrium.
The concentration of I2 will
Submit Answer
Retry Entire Group
No more group attempts remain
Transcribed Image Text:Consider the following system at equilibrium where AH° = -10.4 kJ/mol, and K. = 55.6 , at 698 K. %3D H2 (g) + I2 (g) =2 HI (g) When 0.38 moles of HI (g) are added to the equilibrium system at constant temperature: The value of K. The value of Qc( Kc. The reaction must Orun in the forward direction to restablish equilibrium. Orun in the reverse direction to restablish equilibrium. O remain the same. It is already at equilibrium. The concentration of I2 will Submit Answer Retry Entire Group No more group attempts remain
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